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Weakly nonlinear analysis of a hyperbolic model for animal group formation

机译:用于动物群形成的双曲模型的弱非线性分析

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摘要

We consider an one-dimensional nonlocal hyperbolic model for group formation with application to self-organizing collectives of animals in homogeneous environments. Previous studies have shown that this model displays at least four complex spatial and spatiotemporal group patterns. Here, we use weakly nonlinear analysis to better understand the mechanisms involved in the formation of two of these patterns, namely stationary pulses and traveling trains. We show that both patterns arise through subcritical bifurcations from spatially homogeneous steady states. We then use these results to investigate the effect of two social interactions (attraction and alignment) on the structure of stationary and moving animal groups. While attraction makes the groups more compact, alignment has a dual effect, depending on whether the groups are stationary or moving. More precisely, increasing alignment makes the stationary groups compact, and the moving groups more elongated. Also, the results show the existence of a threshold for the total group density, above which, coordinated behaviors described by stationary and moving groups persist for a long time.
机译:我们考虑用于群体形成的一维非局部双曲模型,并将其应用于在同质环境中动物的自组织集合体。先前的研究表明,该模型显示了至少四个复杂的时空分组模式。在这里,我们使用弱非线性分析来更好地理解涉及这两种模式的形成的机制,即平稳脉冲和行进列车。我们表明,这两种模式都是通过亚临界分叉从空间均匀稳态产生的。然后,我们使用这些结果来研究两种社交互动(吸引力和对齐方式)对固定和活动动物群体结构的影响。吸引力使各组更加紧凑,而对齐则取决于该组是静止的还是运动的,具有双重作用。更精确地,增加对准使得固定组紧凑,而移动组更细长。同样,结果表明存在总群体密度的阈值,在该阈值之上,固定和移动群体描述的协调行为会持续很长时间。

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